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含固体颗粒焦油的真空蒸馏分离特性实验研究:轻组分分布

Experimental Study on Vacuum Distillation Separation Characteristics of Tar Containing Solid Particles: Distributions of Light Components.

作者信息

Yang Fu, Hou Yujie, Wang Chang'an, Wang Zhendong, Yuan Tianlin, Zhao Lin, Duan Zhonghui, Che Defu

机构信息

Shaanxi Provincial Coal Geology Group Co. Ltd., Key Laboratory of Coal Resources Exploration and Comprehensive Utilization, Ministry of Natural and Resources, Xi'an 710026, China.

State Key Laboratory of Multiphase Flow in Power Engineering, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

ACS Omega. 2024 May 29;9(23):24819-24830. doi: 10.1021/acsomega.4c01513. eCollection 2024 Jun 11.

Abstract

The impacts of the composition and properties of tar products on their utilization are of great importance, while the consequences of varying tar separation conditions on distillation fractions remain underexplored. Solid impurities in special tar products (e.g., subsurface in situ pyrolysis-derived tar-like substances) can contribute to the separation as well. In the present study, low-temperature coal tar (LTCT) was used as an analogue to pyrolysis product, mixed with semi-coke and coal dust, representing pyrolytic byproducts and nonpyrolytic substances, respectively. The LTCT mixtures were tested with vacuum distillation at various pressures and temperatures. The results revealed the role of pressure in fraction distribution across temperatures, with higher pressure concentrating fractions at lower temperatures. The impact of solid impurities on distillation primarily stemmed from adsorption. Minimal concentrations of solid impurities carried coal dust/semi-coke into the distillation, but higher levels retained them in the residue. The adsorption of coal dust was quite high at lower temperatures and waned as temperature increased, unlike semi-coke, which had consistent adsorption throughout the distillation. The present study can advance the understanding of vacuum distillation for tar products in the presence of solid impurities, offering a framework for the effective distillation/utilization of coal tar. By probing separation conditions, tar properties, and solid impurity effects, the present research will refine strategies for optimizing coal tar use, crucial for enhancing energy security and sustainable progress in China.

摘要

焦油产品的组成和性质对其利用的影响至关重要,而不同焦油分离条件对蒸馏馏分的影响仍未得到充分研究。特殊焦油产品中的固体杂质(如地下原位热解衍生的焦油状物质)也有助于分离。在本研究中,低温煤焦油(LTCT)被用作热解产物的类似物,与半焦和煤粉混合,分别代表热解副产物和非热解物质。对LTCT混合物在不同压力和温度下进行真空蒸馏测试。结果揭示了压力在不同温度下馏分分布中的作用,较高压力使馏分在较低温度下浓缩。固体杂质对蒸馏的影响主要源于吸附。最低浓度的固体杂质会将煤粉/半焦带入蒸馏过程,但较高浓度会将它们保留在残渣中。煤粉在较低温度下的吸附相当高,且随着温度升高而减弱,而半焦在整个蒸馏过程中的吸附则保持一致。本研究可以增进对存在固体杂质时焦油产品真空蒸馏的理解,为煤焦油的有效蒸馏/利用提供一个框架。通过探究分离条件、焦油性质和固体杂质的影响,本研究将完善优化煤焦油利用的策略,这对增强中国的能源安全和可持续发展至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f94/11170754/44410681ccaa/ao4c01513_0001.jpg

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